The important role of Phthalazine

With the rapid development of chemical substances, we look forward to future research findings about Phthalazine

As a common heterocyclic compound, it belongs to phthalazine compound, name is Phthalazine, and cas is 253-52-1, its synthesis route is as follows.,253-52-1

3-(2-Bromoacetyl)-2H-chromen-2-one (2.67 g, 10 mmol)and 1.3 g phthalazine (10 mmol) were refluxed understirring in 60 cm3 ethyl acetate for 4 h. The whiteprecipitate formed was removed by filtration and washedwith chloroform on the filter paper to obtain 3d as whitepowder. Yield: 3.771 g (95 percent); m.p.: 244?245 C; 1HNMR (DMSO-d6, 300 MHz): d = 6.60 (s, 2H, CH2),7.49?7.54 (m, 1H, H-Coum), 7.59 (d, J = 8.4 Hz, 1H,H-Coum), 7.86?7.91 (m, 1H, H-Coum), 8.09 (dd, J = 7.7,1.5 Hz, 1H, H-Coum), 8.50?8.55 (m, 1H, H-6), 8.61?8.70(m, 1H, H-7), 8.71 (d, J = 7.7 Hz, 1H, H-5), 8.71 (d,J = 7.9 Hz, 1H, H-8), 8.98 (s, 1H, H-Coum), 10.23 (s, 1H,H-4), 10.76 (s, 1H, H-1) ppm; 13C NMR (DMSO-d6,75 MHz): d = 72.2 (CH2), 117.4 (C-Coum), 126.8 (CCoum),129.6 (Pht), 131.8 (C-Coum), 132.5 (C-Coum),136.8 (Pht), 137.6 (Pht), 140.9 (Pht), 118.9, 122.5, 128.1,128.4, 155.8, 159.6 (C4a, C-8a, 4 Cq-Coum), 150.4 (CCoum),154.4 (C-4), 155.7 (C-1), 186.3 (CO-Coum) ppm.

With the rapid development of chemical substances, we look forward to future research findings about Phthalazine

Reference£º
Article; Popa, Marcel M.; Georgescu, Emilian; Draghici, Constantin; Georgescu, Florentina; Dumitrascu, Florea; Dumitrescu, Denisa; Monatshefte fur Chemie; vol. 146; 12; (2015); p. 2029 – 2040;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

Analyzing the synthesis route of 253-52-1

The synthetic route of 253-52-1 has been constantly updated, and we look forward to future research findings.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.253-52-1,Phthalazine,as a common compound, the synthetic route is as follows.

General procedure: Phthalazine (1) (91 mg, 0.70 mmol), 1,1-dicyanoalkene 2(0.70 mmol), and isocyanide 3 (0.70 mmol) were dissolvedin acetonitrile (1 ml). After that, distilled water(0.05?0.1 ml) was added to the reaction mixture up tovisible turbidity and stirred at 25?30¡ãC for 12?18 h. Thereaction mixture was evaporated to dryness and product 4was purified by crystallization from ethanol., 253-52-1

The synthetic route of 253-52-1 has been constantly updated, and we look forward to future research findings.

Reference£º
Article; Mironov, Maxim A.; Shulepov, Iliya D.; Kozhikhova, Ksenia V.; Ivantsova, Maria N.; Tokareva, Maria I.; Chemistry of Heterocyclic Compounds; vol. 53; 4; (2017); p. 430 – 433; Khim. Geterotsikl. Soedin.; vol. 53; 4; (2017); p. 430 – 433,4;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

The important role of 253-52-1

With the complex challenges of chemical substances, we look forward to future research findings about Phthalazine

Name is Phthalazine, as a common heterocyclic compound, it belongs to phthalazine compound, and cas is 253-52-1, its synthesis route is as follows.,253-52-1

General procedure: In a Schlenk tube charged with a stirring bar, the air-stable bidentate Lewis acid catalyst B (5.00 mol percent) and the stated solvent were added under N2. Then, the phthalazine (1.00 equiv), dienophile (2.00 equiv; for enamines, generated in situ from aldehyde and amine) were added subsequently. The reaction mixture was stirred at the given temperature. After the reaction was finished, the solvent was removed. The remaining residue was purified by flash column chromatography over SiO2 to obtain the product.

With the complex challenges of chemical substances, we look forward to future research findings about Phthalazine

Reference£º
Article; Hong, Longcheng; Ahles, Sebastian; Heindl, Andreas H.; Tietcha, Gastelle; Petrov, Andrey; Lu, Zhenpin; Logemann, Christian; Wegner, Hermann A.; Beilstein Journal of Organic Chemistry; vol. 14; (2018); p. 618 – 625;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

Some tips on 253-52-1

253-52-1 Phthalazine 9207, aphthalazine compound, is more and more widely used in various fields.

With the rapid development and complex challenges of chemical substances, new drug synthesis pathways are usually the most effective.253-52-1,Phthalazine,as a common compound, the synthetic route is as follows.

General procedure: Phthalazine (1) (91 mg, 0.70 mmol), 1,1-dicyanoalkene 2(0.70 mmol), and isocyanide 3 (0.70 mmol) were dissolvedin acetonitrile (1 ml). After that, distilled water(0.05?0.1 ml) was added to the reaction mixture up tovisible turbidity and stirred at 25?30¡ãC for 12?18 h. Thereaction mixture was evaporated to dryness and product 4was purified by crystallization from ethanol., 253-52-1

253-52-1 Phthalazine 9207, aphthalazine compound, is more and more widely used in various fields.

Reference£º
Article; Mironov, Maxim A.; Shulepov, Iliya D.; Kozhikhova, Ksenia V.; Ivantsova, Maria N.; Tokareva, Maria I.; Chemistry of Heterocyclic Compounds; vol. 53; 4; (2017); p. 430 – 433; Khim. Geterotsikl. Soedin.; vol. 53; 4; (2017); p. 430 – 433,4;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

Brief introduction of Phthalazine

With the synthetic route has been constantly updated, we look forward to future research findings about Phthalazine,belong phthalazine compound

As a common heterocyclic compound, it belongs to quinuclidine compound,Quinuclidine-4-carboxylic acid hydrochloride,40117-63-3,Molecular formula: C8H14ClNO20,mainly used in chemical industry, its synthesis route is as follows.,253-52-1

General procedure: To a stirred solution of furan (1.20 g,17.6 mmol) in dry THF (20 mL) was added dropwise n-butyllithium (2.5 M in hexanes, 7.30 mL,18.3 mmol) over a period of 30 min at ?78 ¡ãC. The solution was warmed to ?25 ¡ãC, and stirring wascontinued at this temperature for 30 min. The reaction mixture was cooled back to ?78 ¡ãC, and asolution of 1 (2.00 g, 15.3 mmol) in dry THF (20 mL) was added dropwise over 30 min. The reaction mixture was stirred at this temperature for 2 h. The mixture was poured into saturated NH4Cl(100 mL) and extracted with ethyl acetate (3 ¡Á 50 mL). The combined organic extracts were thenwashed with saturated NaCl (50 mL), dried (MgSO4), filtered, and concentrated under vacuum toafford 3f as a light brown oil. The crude product 3f was dissolved in DCM (30 mL), and triethylamine(2.37 g, 3.26 mL, 23.4 mmol) was added, followed by dropwise addition of acryloyl chloride (1.59 g,1.43 mL, 17.6 mmol) at 0 ¡ãC. The reaction mixture was stirred at 0 ¡ãC for 2 h. The reaction was thenquenched with saturated NaCl (25 mL), and the organic layer was separated. The aqueous layer wasextracted with DCM (2 ¡Á 30 mL), and the combined organic extracts were washed with saturated NaCl(50 mL), dried (MgSO4), filtered, and concentrated to afford the crude product. The product waspurified on a silica gel column eluted with hexanes?EtOAc (7:3) to afford 4f (2.66 g, 60percent) as a yellowliquid.

With the synthetic route has been constantly updated, we look forward to future research findings about Phthalazine,belong phthalazine compound

Reference£º
Article; Nammalwar, Baskar; Muddala, N.Prasad; Bourne, Christina R.; Henry, Mary; Bourne, Philip C.; Bunce, Richard A.; Barrow, Esther W.; Berlin, K.Darrell; Barrow, William W.; Molecules; vol. 19; 3; (2014); p. 3231 – 3246;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

Analyzing the synthesis route of 253-52-1

With the synthetic route has been constantly updated, we look forward to future research findings about Phthalazine,belong phthalazine compound

As a common heterocyclic compound, it belong phthalazine compound,Phthalazine,253-52-1,Molecular formula: C8H6N2,mainly used in chemical industry, its synthesis route is as follows.,253-52-1

General procedure: A solution of 2.00 g (15.0 mmol) of 2 in 20 mL of dry THF was cooled to 0 ¡ãC, and 8.0 mL of 2.0 M isopropylmagnesium chloride (3b) (16.0 mmol) in ether was slowly added dropwise over 20 min. The reaction was allowed to stir at 0 ¡ãC for 5 h and was then quenched with 50 mL of saturated NH4Cl and extracted with ethyl acetate (3 .x. 50 mL). The combined organic extracts were washed with saturated NaCl, dried (MgSO4), and concentrated under vacuum to give dihydrophthalazine 4b as a viscous, brown oil. This oil was dried under high vacuum for 30 min and was used without further purification.The crude 4b in dichloromethane at 0 ¡ãC was treated, as above, with 1.82 g (2.50 mL, 18.0 mmol) of triethylamine and 1.40 g (1.26 mL, 15.5 mmol) of 5, and the reaction was stirred for 2 h. Work-up and chromatography gave 1.83 g (40percent) of 6b as a viscous, brown oil.

With the synthetic route has been constantly updated, we look forward to future research findings about Phthalazine,belong phthalazine compound

Reference£º
Article; Nammalwar, Baskar; Bunce, Richard A.; Berlin, K. Darrell; Bourne, Christina R.; Bourne, Philip C.; Barrow, Esther W.; Barrow, William W.; European Journal of Medicinal Chemistry; vol. 54; (2012); p. 387 – 396;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

Brief introduction of 253-52-1

The synthetic route of 253-52-1 has been constantly updated, and we look forward to future research findings.

253-52-1, Phthalazine is a phthalazine compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

General procedure: A solution of NH4SCN (0.10 g, 1.3 mmol) in water (10 ml) was slowly added to the methanolic solution (15 ml) of Cd(NO3)2¡¤4H2O (0.2 g; 0.65 mmol) and quinazoline (0.17 g; 1.3 mmol) and stirred at room temperature for 12 h. Yellow crystalline precipitate of [Cd(Qnz)2(SCN)2]n was filtered off, dried in air and collected in 75percent yield. The crystals suitable for X-ray structure determination were obtained by slow recrystallization from methanol., 253-52-1

The synthetic route of 253-52-1 has been constantly updated, and we look forward to future research findings.

Reference£º
Article; Machura; Nawrot; Kruszynski; Dulski; Polyhedron; vol. 54; (2013); p. 272 – 284;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

Analyzing the synthesis route of 253-52-1

With the synthetic route has been constantly updated, we look forward to future research findings about Phthalazine,belong phthalazine compound

As a common heterocyclic compound, it belong phthalazine compound,Phthalazine,253-52-1,Molecular formula: C8H6N2,mainly used in chemical industry, its synthesis route is as follows.,253-52-1

General procedure: In a Schlenk tube charged with a stirring bar, the air-stable bidentate Lewis acid catalyst B (5.00 mol percent) and the stated solvent were added under N2. Then, the phthalazine (1.00 equiv), dienophile (2.00 equiv; for enamines, generated in situ from aldehyde and amine) were added subsequently. The reaction mixture was stirred at the given temperature. After the reaction was finished, the solvent was removed. The remaining residue was purified by flash column chromatography over SiO2 to obtain the product.

With the synthetic route has been constantly updated, we look forward to future research findings about Phthalazine,belong phthalazine compound

Reference£º
Article; Hong, Longcheng; Ahles, Sebastian; Heindl, Andreas H.; Tietcha, Gastelle; Petrov, Andrey; Lu, Zhenpin; Logemann, Christian; Wegner, Hermann A.; Beilstein Journal of Organic Chemistry; vol. 14; (2018); p. 618 – 625;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

Downstream synthetic route of 253-52-1

253-52-1, As the paragraph descriping shows that 253-52-1 is playing an increasingly important role.

253-52-1, Phthalazine is a phthalazine compound, ?involved in a variety of chemical synthesis. Rlated chemical reaction is continuously updated

General procedure: In a Schlenk tube charged with a stirring bar, the air-stable bidentate Lewis acid catalyst B (5.00 mol percent) and the stated solvent were added under N2. Then, the phthalazine (1.00 equiv), dienophile (2.00 equiv; for enamines, generated in situ from aldehyde and amine) were added subsequently. The reaction mixture was stirred at the given temperature. After the reaction was finished, the solvent was removed. The remaining residue was purified by flash column chromatography over SiO2 to obtain the product.

253-52-1, As the paragraph descriping shows that 253-52-1 is playing an increasingly important role.

Reference£º
Article; Hong, Longcheng; Ahles, Sebastian; Heindl, Andreas H.; Tietcha, Gastelle; Petrov, Andrey; Lu, Zhenpin; Logemann, Christian; Wegner, Hermann A.; Beilstein Journal of Organic Chemistry; vol. 14; (2018); p. 618 – 625;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem

Application of 253-52-1

As the rapid development of chemical substances, we look forward to future research findings about 253-52-1

A common heterocyclic compound, the phthalazine compound, name is Phthalazine,cas is 253-52-1, mainly used in chemical industry, its synthesis route is as follows.,253-52-1

Example 29 Preparation of (RS)-1-(4-fluoro-phenyl)-1,2-dihydro-phthalazine 5.53 ml of a 1.6 M solution of butyllithium in hexane are added dropwise at -78¡ã C. within 20 min. to a solution of 1.48 g of 1-bromo-4-fluoro-benzene in 5 ml of tetrahydrofuran. The resulting white suspension is stirred for a further hour. A solution of 1 g of phthalazine in 5 ml of tetrahydrofuran is added dropwise at -78¡ã C. within 10 min. The reaction mixture is left to warm to room temperature, treated with 50 ml of water and extracted 3 times with 50 ml of dichloromethane each time. The organic phases are combined washed with 50 ml of water and 50 ml of a saturated sodium chloride solution, dried over magnesium sulphate, filtered, the filtrate is concentrated and the residue is chromatographed on 100 g of silica gel with the eluent hexane/ethyl acetate 1:1. 1.49 g (86percent) of (RS)-1-(4-fluoro-phenyl)-1,2-dihydro-phthalazine are obtained as a yellow oil. MS: 227 (M+H)+.

As the rapid development of chemical substances, we look forward to future research findings about 253-52-1

Reference£º
Patent; Hoffmann-La Roche Inc.; US6114330; (2000); A;,
Phthalazine – Wikipedia
Phthalazine | C8H6N2 – PubChem